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心肌细胞内钙离子释放事件的近距离观察:快速共聚焦成像的新见解。

Ca(2+) release events in cardiac myocytes up close: insights from fast confocal imaging.

机构信息

Deptartment of General Physiology of the Nervous System, A. A. Bogomoletz Institute of Physiology, Kiev, Ukraine.

出版信息

PLoS One. 2013 Apr 18;8(4):e61525. doi: 10.1371/journal.pone.0061525. Print 2013.

Abstract

The spatio-temporal properties of Ca(2+) transients during excitation-contraction coupling and elementary Ca(2+) release events (Ca(2+) sparks) were studied in atrial and ventricular myocytes with ultra-fast confocal microscopy using a Zeiss LSM 5 LIVE system that allows sampling rates of up to 60 kHz. Ca(2+) sparks which originated from subsarcolemmal junctional sarcoplasmic reticulum (j-SR) release sites in atrial myocytes were anisotropic and elongated in the longitudinal direction of the cell. Ca(2+) sparks in atrial cells originating from non-junctional SR and in ventricular myocytes were symmetrical. Ca(2+) spark recording in line scan mode at 40,000 lines/s uncovered step-like increases of [Ca(2+)]i. 2-D imaging of Ca(2+) transients revealed an asynchronous activation of release sites and allowed the sequential recording of Ca(2+) entry through surface membrane Ca(2+) channels and subsequent activation of Ca(2+)-induced Ca(2+) release. With a latency of 2.5 ms after application of an electrical stimulus, Ca(2+) entry could be detected that was followed by SR Ca(2+) release after an additional 3 ms delay. Maximum Ca(2+) release was observed 4 ms after the beginning of release. The timing of Ca(2+) entry and release was confirmed by simultaneous [Ca(2+)]i and membrane current measurements using the whole cell voltage-clamp technique. In atrial cells activation of discrete individual release sites of the j-SR led to spatially restricted Ca(2+) release events that fused into a peripheral ring of elevated [Ca(2+)]i that subsequently propagated in a wave-like fashion towards the center of the cell. In ventricular myocytes asynchronous Ca(2+) release signals from discrete sites with no preferential subcellular location preceded the whole-cell Ca(2+) transient. In summary, ultra-fast confocal imaging allows investigation of Ca(2+) signals with a time resolution similar to patch clamp technique, however in a less invasive fashion.

摘要

使用允许采样率高达 60 kHz 的蔡司 LSM 5 LIVE 系统,通过超快共聚焦显微镜研究了兴奋-收缩偶联期间 Ca(2+)瞬变的时空特性和基本 Ca(2+)释放事件(Ca(2+)火花)。心房肌细胞中源自肌小节下连接肌浆网(j-SR)释放位点的 Ca(2+)火花呈各向异性,在细胞的长轴方向拉长。源自非连接性 SR 的心房细胞中的 Ca(2+)火花和心室肌细胞中的 Ca(2+)火花是对称的。以 40,000 线/秒的线扫描模式记录 Ca(2+)火花会发现 [Ca(2+)]i 呈阶跃式增加。二维 Ca(2+)瞬变成像揭示了释放位点的异步激活,并允许通过细胞膜 Ca(2+)通道记录 Ca(2+)内流的顺序和随后的 Ca(2+)-诱导的 Ca(2+)释放的激活。在施加电刺激后 2.5 ms 时,可以检测到 Ca(2+)内流,随后在另外 3 ms 的延迟后出现 SR Ca(2+)释放。在释放开始后 4 ms 时观察到最大 Ca(2+)释放。通过使用全细胞膜片钳技术同时进行 [Ca(2+)]i 和膜电流测量来确认 Ca(2+)内流和释放的时间。在心房细胞中,j-SR 的离散单个释放位点的激活导致空间上受限的 Ca(2+)释放事件融合成一个升高的 [Ca(2+)]i 的周边环,随后以波状方式向细胞中心传播。在心室肌细胞中,来自无优先亚细胞位置的离散位点的异步 Ca(2+)释放信号先于整个细胞 Ca(2+)瞬变。总之,超快共聚焦成像允许以类似于膜片钳技术的时间分辨率研究 Ca(2+)信号,但侵入性更小。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/afb8/3630194/187745660808/pone.0061525.g001.jpg

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